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Study on Backfire for a Two-Stroke Hydrogen Fueled Free-Piston Engine with Loop Scavenging  

Cho, Kwan-Yeon (Grad. School of Sungkyunkwan Univ.)
Byun, Chang-Hee (Grad. School of Sungkyunkwan Univ.)
Back, Dae-Ha (Grad. School of Sungkyunkwan Univ.)
Lee, Jong-Tae (School of Mechanical Engineering, Sungkyunkwan Univ.)
Publication Information
Transactions of the Korean hydrogen and new energy society / v.21, no.6, 2010 , pp. 487-492 More about this Journal
Abstract
For developing a two-stroke free-piston hydrogen engine with high efficiency and low emission, determination of the scavenging type is one of the most important factor. In this research, backfire characteristics for loop scavenging were analyzed with the number of piston crevice volume and piston expansion speed. Rapid Compression Expansion Machine, RCEM was used for combustion research of the free piston $H_2$ engine in the experiment. As the results, it was shown that although backfire occurring in a loop scavenging type can be partially controled by a complete exhaust of burned gas, possibility of backfire basically exist due to the structure which piston crevice volumes contact with fresh mixture in a scavenging port. However, a loop scavenging may be considered as combustion chamber of a free piston $H_2$ engine from the point of view that backfire does not occur nearby lean equivalence ratio obtained high thermal efficiency. It was also analyzed that an advances of backfire occurrence timing with increase of the fuel-air equivalence ratio were due to promotion of flame propagation into piston crevice volumes by decrease of the quenching distance.
Keywords
Free-piston hydrogen engine; Loop scavenging; Expansion speed; Piston crevice volume; Backfire control;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
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